Univ. Brest, CNRS, IRD, Ifremer, LEMAR, Plouzané, France.
California Institute of Technology, Pasadena, CA, USA.
Sci Rep. 2019 Apr 3;9(1):5588. doi: 10.1038/s41598-019-42117-w.
The area west of the Kerguelen Islands (20-70°E/45-60°S) is characterized by a weak mesoscale activity except for a standing meander region of the Antarctic Circumpolar Current (ACC) localized between 20 and 40°E. A unique bio-physical dataset at high-resolution collected by a southern elephant seal (Mirounga leonina) reveals a conspicuous increase in foraging activity at the standing meander site up to 5 times larger than during the rest of her three-month trip west of the Kerguelen Islands. Here, we propose a physical explanation for such high biological activity based on the study of small-scale fronts with scales of 5 to 20 km, also called submesoscales. The standing meander is associated with intensified frontal dynamics at submesoscale, not observed in the rest of the region. Results shed new light on the spatial distribution of submesoscale fronts in the under-sampled area west of the Kerguelen plateau and emphasize their importance for upper trophic levels. Despite that most elephant seals target foraging grounds east of the Kerguelen Plateau, our findings suggest that excursions to the west are not accidental, and may be explained by the recurrently elevated physical and biological activity of the site. As such, other standing meanders of the ACC may also act as biological hotspots where trophic interactions are stimulated by submesoscale turbulence.
该区域(20-70°E/45-60°S)位于克尔格伦群岛西部,其特点是中尺度活动较弱,除了在 20-40°E 之间存在一个南极环极流(ACC)的固定弯曲区域。一只南部象海豹(Mirounga leonina)收集的独特的高分辨率生物物理数据集显示,在固定弯曲区域的觅食活动明显增加,其强度是在该海豹离开克尔格伦群岛向西旅行的其余时间的 5 倍。在这里,我们根据 5 至 20 公里尺度的小尺度锋(也称为次中尺度)的研究,提出了这种高生物活性的物理解释。固定弯曲与次中尺度锋的增强动力学有关,而在该区域的其余部分则没有观察到这种情况。研究结果揭示了次中尺度锋在克尔格伦高原西部采样不足区域的空间分布,并强调了它们对上层营养级的重要性。尽管大多数象海豹将觅食地定位于克尔格伦高原东部,但我们的研究结果表明,向西部的移动并非偶然,而是可能由于该区域反复出现的物理和生物活性升高所致。因此,ACC 的其他固定弯曲也可能成为生物热点,其中次中尺度湍流动能刺激了营养相互作用。